High therapeutic efficiency of magnetic hyperthermia in xenograft models achieved with moderate temperature dosages in the tumor area.
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Antibody-mediated targeting of iron oxide nanoparticles to the folate receptor alpha increases tumor cell association in vitro and in vivoEfficient treatment of breast cancer xenografts with multifunctionalized iron oxide nanoparticles combining magnetic hyperthermia and anti-cancer drug delivery.Optimization of synthesis and peptization steps to obtain iron oxide nanoparticles with high energy dissipation rates.Magnetic nanoparticle hyperthermia enhances radiation therapy: A study in mouse models of human prostate cancerUsing ferromagnetic nanoparticles with low Curie temperature for magnetic resonance imaging-guided thermoablation.Hyperthermia enhances 17-DMAG efficacy in hepatocellular carcinoma cells with aggravated DNA damage and impaired G2/M transitionIn-situ particles reorientation during magnetic hyperthermia application: Shape matters twice.Nanoparticle-based hyperthermia distinctly impacts production of ROS, expression of Ki-67, TOP2A, and TPX2, and induction of apoptosis in pancreatic cancer.Heterogeneous response of different tumor cell lines to methotrexate-coupled nanoparticles in presence of hyperthermia.Targeting the microenvironment of pancreatic cancer: overcoming treatment barriers and improving local immune responses.Methotrexate-coupled nanoparticles and magnetic nanochemothermia for the relapse-free treatment of T24 bladder tumors.Magnetic nanoparticles: preparation methods, applications in cancer diagnosis and cancer therapy.Improved Hyperthermia Treatment of Tumors Under Consideration of Magnetic Nanoparticle Distribution Using Micro-CT Imaging.Design of iron oxide-based nanoparticles for MRI and magnetic hyperthermia.Albumin-Gold Nanorod Nanoplatform for Cell-Mediated Tumoritropic Delivery with Homogenous ChemoDrug Distribution and Enhanced Retention AbilityPhysical mechanism and modeling of heat generation and transfer in magnetic fluid hyperthermia through Néelian and Brownian relaxation: a review.Structural properties of magnetic nanoparticles determine their heating behavior - an estimation of the in vivo heating potentialComparative evaluation of the impact on endothelial cells induced by different nanoparticle structures and functionalization.Anticipating hyperthermic efficiency of magnetic colloids using a semi-empirical model: a tool to help medical decisions.Commentary on the clinical and preclinical dosage limits of interstitially administered magnetic fluids for therapeutic hyperthermia based on current practice and efficacy models.
P2860
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P2860
High therapeutic efficiency of magnetic hyperthermia in xenograft models achieved with moderate temperature dosages in the tumor area.
description
2014 nî lūn-bûn
@nan
2014 թուականի Յունիսին հրատարակուած գիտական յօդուած
@hyw
2014 թվականի հունիսին հրատարակված գիտական հոդված
@hy
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
name
High therapeutic efficiency of ...... ure dosages in the tumor area.
@ast
High therapeutic efficiency of ...... ure dosages in the tumor area.
@en
High therapeutic efficiency of ...... ure dosages in the tumor area.
@nl
type
label
High therapeutic efficiency of ...... ure dosages in the tumor area.
@ast
High therapeutic efficiency of ...... ure dosages in the tumor area.
@en
High therapeutic efficiency of ...... ure dosages in the tumor area.
@nl
prefLabel
High therapeutic efficiency of ...... ure dosages in the tumor area.
@ast
High therapeutic efficiency of ...... ure dosages in the tumor area.
@en
High therapeutic efficiency of ...... ure dosages in the tumor area.
@nl
P2093
P2860
P50
P1476
High therapeutic efficiency of ...... ure dosages in the tumor area.
@en
P2093
Francisco J Teran
Gabriella Rimkus
Heidi Dähring
Ingrid Hilger
Robert Ludwig
Vijay Patel
Volker Ettelt
P2860
P304
P356
10.1007/S11095-014-1417-0
P577
2014-06-03T00:00:00Z